Multiscale Analysis of the Interfacial Mechanical Behavior for Composite of Carbon Nanotube and α-Alumina

Based on multiscale methods the mechanical behavior for the interface of carbon nanotube and α-alumina is analyzed. The stress transfer between nanotube and alumina is provided by van der Waals interaction. Using cohesive law the relationship between normal stress (shear stress) and displacement is...

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Main Authors: Tingting Yan, Gaofeng Wei
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2014/237097
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author Tingting Yan
Gaofeng Wei
author_facet Tingting Yan
Gaofeng Wei
author_sort Tingting Yan
collection DOAJ
description Based on multiscale methods the mechanical behavior for the interface of carbon nanotube and α-alumina is analyzed. The stress transfer between nanotube and alumina is provided by van der Waals interaction. Using cohesive law the relationship between normal stress (shear stress) and displacement is studied, as well as the stress intensity. The stress distribution of the interface is obtained by improved COX model. The strain rate of nanotube-composite is presented when the interfacial slip occurs through the van der Waals interaction.
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institution Kabale University
issn 1687-8434
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publishDate 2014-01-01
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series Advances in Materials Science and Engineering
spelling doaj-art-cd85a94183634d80bfcbfeb07f9265e22025-02-03T05:46:06ZengWileyAdvances in Materials Science and Engineering1687-84341687-84422014-01-01201410.1155/2014/237097237097Multiscale Analysis of the Interfacial Mechanical Behavior for Composite of Carbon Nanotube and α-AluminaTingting Yan0Gaofeng Wei1School of Mechanical and Automotive Engineering, Qilu University of Technology, Jinan 250353, ChinaSchool of Mechanical and Automotive Engineering, Qilu University of Technology, Jinan 250353, ChinaBased on multiscale methods the mechanical behavior for the interface of carbon nanotube and α-alumina is analyzed. The stress transfer between nanotube and alumina is provided by van der Waals interaction. Using cohesive law the relationship between normal stress (shear stress) and displacement is studied, as well as the stress intensity. The stress distribution of the interface is obtained by improved COX model. The strain rate of nanotube-composite is presented when the interfacial slip occurs through the van der Waals interaction.http://dx.doi.org/10.1155/2014/237097
spellingShingle Tingting Yan
Gaofeng Wei
Multiscale Analysis of the Interfacial Mechanical Behavior for Composite of Carbon Nanotube and α-Alumina
Advances in Materials Science and Engineering
title Multiscale Analysis of the Interfacial Mechanical Behavior for Composite of Carbon Nanotube and α-Alumina
title_full Multiscale Analysis of the Interfacial Mechanical Behavior for Composite of Carbon Nanotube and α-Alumina
title_fullStr Multiscale Analysis of the Interfacial Mechanical Behavior for Composite of Carbon Nanotube and α-Alumina
title_full_unstemmed Multiscale Analysis of the Interfacial Mechanical Behavior for Composite of Carbon Nanotube and α-Alumina
title_short Multiscale Analysis of the Interfacial Mechanical Behavior for Composite of Carbon Nanotube and α-Alumina
title_sort multiscale analysis of the interfacial mechanical behavior for composite of carbon nanotube and α alumina
url http://dx.doi.org/10.1155/2014/237097
work_keys_str_mv AT tingtingyan multiscaleanalysisoftheinterfacialmechanicalbehaviorforcompositeofcarbonnanotubeandaalumina
AT gaofengwei multiscaleanalysisoftheinterfacialmechanicalbehaviorforcompositeofcarbonnanotubeandaalumina